Imprint of matter-antimatter asymmetry on collapsing domain walls

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Hauptverfasser: Bhandari, Dipendu, Borah, Debasish, Saha, Indrajit
Format: Preprint
Veröffentlicht: 2026
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author Bhandari, Dipendu
Borah, Debasish
Saha, Indrajit
author_facet Bhandari, Dipendu
Borah, Debasish
Saha, Indrajit
contents Spontaneous breaking of discrete symmetries play non-trivial role in many well-motivated particle physics models. However, it leads to a network of cosmologically unwanted domain walls (DWs) which can be made unstable by introducing a bias term in the scalar potential. In this letter, we provide a novel origin of such bias terms at finite temperature due to radiative corrections from a Dirac fermion with large asymmetry $\sim \mathcal{O}(0.1)$ in its number density. In addition to getting a new viable region of parameter space for collapsing DWs not explored previously and resulting gravitational waves (GWs) accessible at future experiments, the viability of the scenario crucially depends on the temperature of asymmetry generation too. This provides a unique way of probing both the amount of asymmetry and the corresponding temperature via future observations of GWs from collapsing DWs. The large asymmetry in the Dirac fermion can also have interesting implications for the observed baryon asymmetry as well as dark matter and large neutrino asymmetry.
format Preprint
id arxiv_https___arxiv_org_abs_2604_02421
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Imprint of matter-antimatter asymmetry on collapsing domain walls
Bhandari, Dipendu
Borah, Debasish
Saha, Indrajit
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
Spontaneous breaking of discrete symmetries play non-trivial role in many well-motivated particle physics models. However, it leads to a network of cosmologically unwanted domain walls (DWs) which can be made unstable by introducing a bias term in the scalar potential. In this letter, we provide a novel origin of such bias terms at finite temperature due to radiative corrections from a Dirac fermion with large asymmetry $\sim \mathcal{O}(0.1)$ in its number density. In addition to getting a new viable region of parameter space for collapsing DWs not explored previously and resulting gravitational waves (GWs) accessible at future experiments, the viability of the scenario crucially depends on the temperature of asymmetry generation too. This provides a unique way of probing both the amount of asymmetry and the corresponding temperature via future observations of GWs from collapsing DWs. The large asymmetry in the Dirac fermion can also have interesting implications for the observed baryon asymmetry as well as dark matter and large neutrino asymmetry.
title Imprint of matter-antimatter asymmetry on collapsing domain walls
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2604.02421